Literature DB >> 21701714

Infrared differential absorption Lidar (DIAL) measurements of hydrocarbon emissions.

Rod Robinson1, Tom Gardiner, Fabrizio Innocenti, Peter Woods, Marc Coleman.   

Abstract

We report the application of an infrared (IR) differential absorption Lidar (DIAL) system (also capable of ultra violet measurements) built at the National Physical Laboratory (NPL), UK, to field measurements of total site emissions (controlled and fugitive) from petrochemical and landfill installations. The validation of the IR-DIAL was carried out via a series of controlled field experiments including comparison to GC analysis and tests against controlled methane releases from a test stack, all detailing agreements on the order of ±20%. In volatile organic compound (VOC) measurements at a UK petrochemical site it was found that the American Petroleum Institute's methodology of the time for calculating the emitted flux underestimated by a factor of 2.4. Also, in a similar field trial it was found that scaling traditional point measurements at easily accessible flanges and valves to represent all flanges and valves on a site led to an underestimation by a factor of 6. In addition to petrochemical examples we also report field measurements from a landfill site to demonstrate the advantageous of the DIAL technique for monitoring area emission sources. In this case study it was found that active (still being filled) cells resulted in significantly greater VOC emission rates (30 kg h(-1)) than closed (≤ 10 kg h(-1)).

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Year:  2011        PMID: 21701714     DOI: 10.1039/c0em00312c

Source DB:  PubMed          Journal:  J Environ Monit        ISSN: 1464-0325


  3 in total

1.  South Philadelphia passive sampler and sensor study.

Authors:  Eben D Thoma; Halley L Brantley; Karen D Oliver; Donald A Whitaker; Shaibal Mukerjee; Bill Mitchell; Tai Wu; Bill Squier; Elsy Escobar; Tamira A Cousett; Carol Ann Gross-Davis; Howard Schmidt; Dennis Sosna; Hallie Weiss
Journal:  J Air Waste Manag Assoc       Date:  2016       Impact factor: 2.235

2.  Optical remote sensing for monitoring flying mosquitoes, gender identification and discussion on species identification.

Authors:  Adrien P Genoud; Roman Basistyy; Gregory M Williams; Benjamin P Thomas
Journal:  Appl Phys B       Date:  2018-02-17       Impact factor: 2.070

3.  High Repetition Rate Mid-Infrared Differential Absorption Lidar for Atmospheric Pollution Detection.

Authors:  Yu Gong; Lingbing Bu; Bin Yang; Farhan Mustafa
Journal:  Sensors (Basel)       Date:  2020-04-14       Impact factor: 3.576

  3 in total

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